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D Catovsky

Publications and source records attributed to D Catovsky.

At least 163 records · Page 9Linked to original sources

Zeta chain and CD28 are poorly expressed on T lymphocytes from chronic lymphocytic leukemia.

We have analyzed the expression of the zeta chain of the T cell receptor/CD3 complex and the co-stimulatory molecule CD28 by dual colour immunofluorescence on T lymphocytes from patients with B cell chronic lymphocytic leukemia (CLL). Zeta chain was significantly reduced on CD3-positive lymphocytes from 33 patients compared with normal controls (P<0.0001). The values were lower in stages B and C than in stage A. In five patients tested in partial remission the values were normal. CD28, investigated in CD3, CD4 and CD8 positive T cells from 18 CLL patients appeared to be reduced in the three subsets but more marked in CD8-positive lymphocytes. The loss of zeta chain and CD28 in a proportion of circulating T lymphocytes from CLL may underlie some of the known functional abnormalities of these cells and the immunodeficiency associated with the disease.

CD28 Antigens↗

Differential expression of B29 (CD79b) and mb-1 (CD79a) proteins in acute lymphoblastic leukaemia.

CD79 is a heterodimeric molecule comprising two polypeptide chains, B29 (CD79b) and mb-1 (CD79a). It is physically linked in the surface of B cells to membrane immunoglobulin, forming the B cell antigen receptor complex. Expression of the mb-1 (CD79a) chain has been studied in leukaemias and shown to be present in most B lineage acute lymphoblastic leukaemias (ALL). In contrast, little is known about the expression of B29 (CD79b) in this condition. Two monoclonal antibodies (MoAb) were used in this study by immunocytochemistry and flow cytometry: HM57, against an intracellular epitope of the mb-1(CD79a) chain, and SN8, reacting with an extracellular epitope of B29 (CD79b). Our aim was to investigate the expression of B29 (CD79b) in the various immunological subtypes of B lineage ALL and compare its cytoplasmic and membrane expression. Seventy-nine cases were studied, including 13 chronic myeloid leukaemia in B lymphoid blast crisis (CML-BC) and 66 ALL, subclassified as early B (two), common (28), pre-B (23), mature (five) and biphenotypic with B lymphoid commitment (eight). Most cases expressed mb-1 (CD79a) in the cytoplasm. B29 (CD79b) was expressed in the cytoplasm in 65% (15/23) of pre-B-ALL and in 14% (4/28) common-ALL but it was detected in the cell membrane in only three cases of mature B-ALL, being negative in all other B lineage subtypes ALL. Three of the biphenotypic leukaemias coexpressed cytoplasmic B29 (CD79b) and mu-chain. This was also seen in two cases of CML-BC, while four cases expressed only cytoplasmic B29 (CD79b) without mu-chain. Our results suggest that during B cell differentiation, B29 (CD79b) is expressed later than mb-1 (CD79a) in the cytoplasm and parallels the cytoplasmic expression of mu-chain. B29 (CD79b) is present in the membrane at a later stage compared to its cytoplasmic expression and found in mature B blasts (B-ALL) that express membrane Ig as it is in normal and leukaemic B lymphocytes.

Antibodies, Monoclonal↗

Concurrent activation of MYC and BCL2 in B cell non-Hodgkin lymphoma cell lines by translocation of both oncogenes to the same immunoglobulin heavy chain locus.

Concurrent activation of BCL2 and MYC usually occurs in B cell non-Hodgkin lymphoma (B-NHL) by translocation of both oncogenes to both immunoglobulin heavy chain (IGH) alleles: this abrogates immunoglobulin synthesis. We have studied three B-NHL cell lines (DoHH2, VAL and ROS 50) and show that concurrent activation of BCL2 and MYC may follow translocation of both oncogenes to the same IGH allele. Conventional cytogenetics of DoHH2 suggested the presence of a t(14;18)(q32;q21) translocation. However, fluorescent in situ hybridization (FISH) studies using whole chromosome paints, alpha satellite probes and flow-sorted chromosomes as probes revealed an unexpected complexity of rearrangements involving chromosomes 8, 14 and 18, namely t(8;14;18)(q24;q32;q21). DNA blot and previous PCR analysis confirmed the juxtaposition of BCL2 major breakpoint region (mbr) with IGJH6, but also demonstrated a rearrangement within the first exon of MYC. The centromeric (5') MYC rearranged fragment comigrated with the BCL2-JH6 rearranged fragment in BamHI, EcoRI and Bg/II restriction digests. The der(8)t(8;14;18) therefore comprised 5' MYC (exon I)-Sgamma4-JH6-BCL2 mbr. Similar rearrangements were observed in both ROS 50 and VAL cell lines which contained two and three copies of the der(8)t(8;14;18) respectively. Quantitative flow cytometry for BCL2 and MYC expression showed abundant expression of both proteins in all three lines. These data indicate the der(14)t(14;18)(q32;q21) may itself be the target for any second translocation. The presence of the intact BCL2-JH fusion gene on the der(8)t(8;14;18) allowed concurrent activation of both BCL2 and MYC with no loss of immunoglobulin expression.

Aged↗

Clinical and hematologic response of chronic lymphocytic and prolymphocytic leukemia persisting after allogeneic bone marrow transplantation with the onset of acute graft-versus-host disease: possible role of graft-versus-leukemia.

One patient with refractory B cell chronic lymphocytic leukemia (CLL) and another with refractory B cell prolymphocytic leukemia (PLL) underwent bone marrow transplantation (BMT) from HLA-identical siblings. Circulating malignant cells persisted at high levels in the patient with PLL and there was clinical evidence of disease progression soon after transplant in the patient with CLL. Starting 4-5 weeks post-BMT, cyclosporine was tapered rapidly to stimulate immunologic graft-versus-leukemia (GVL) reactions. There was a fall in the number of malignant cells and reversal of organomegaly with the onset of acute graft-versus-host disease (GVHD). Both patients received conventional doses of corticosteroids for GVHD which also may have contributed to disease response to some extent. Total clearance of the leukemic cells from the peripheral blood was seen in both patients, and clearance of the marrow was seen in the patient with CLL. However, both patients died of complications of severe GVHD. We conclude that GVHD may be associated with a GVL effect after allogeneic BMT for refractory chronic B cell lymphoproliferative diseases. Whether GVL reaction occur in the absence of clinically obvious GVHD after allogeneic BMT for CLL remains to be seen.

Adult↗

Cytogenetic findings in acute biphenotypic leukaemia.

We have studied the immunological and cytogenetic features of 26 patients with acute leukaemia classified as biphenotypic according to a scoring system based on the number and lineage specificity of antigens expressed on the blast cells. The series included 19 adults (age >15 years) and seven children. The cases were distributed in four immunophenotypic groups: (1)coexpression of myeloid and B antigens, 18 cases (69 percent);(2)myeloid and T cell antigens, six (23 percent); (3) one case with trilineage differentiation; and (4) one case with coexpression of both B and T cell antigens. Cytogenetic analysis revealed a normal karyotype in four cases (15 percent) and abnormal clones in 22 (85 percent). Eight patients had the Philadelphia (Ph) translocation, t(9;22)(q34;q11), (31 percent), three cases had structural aberrations of 6q and two had 11q23 rearrangements, one with t(11;19) and a second with t(4;11); the other eight cases had different alterations including t(9;12)(q1;q1), t(8;21)(q22;q22), t(2;7) (p1?3;q3?4), t(7;12)(q11;p11), hyperdiploidy and other structural abnormalities. The chromosomal rearrangements in children were characterised by abnormalities of 11q23 in two cases and the Ph translocation in three. Our data indicate that biphenotypic features are common in cases presenting with t(9;22) as the eight cases included here represent 47 percent of all cases of Ph+ve acute leukaemia studied in our Institution. Biphenotypic acute leukaemias comprise a heterogeneous group of leukaemias involving pluripotent stem cells. Cytogenetic studies are essential in characterising these cases as they will disclose several poor prognosis chromosome aberrations of which the Ph chromosome is the most frequent.

Adolescent↗

T cell-depleted allogeneic bone marrow transplantation from a partially HLA-mismatched unrelated donor for progressive chronic lymphocytic leukemia and fludarabine-induced bone marrow failure.

A 49-year-old man with a 3-year history of chronic lymphocytic leukemia (CLL, stage B at diagnosis) responded well to four course of fludarabine, but developed marrow failure and prolonged pancytopenia lasting 9 months following the fifth course. Fludarabine therapy could not be continued due to pancytopenia, eventually resulting in disease progression. Bone marrow transplantation from an unrelated donor mismatched at one DRB1 locus and both DQB1 loci was performed as salvage therapy. The marrow was depleted of T cells with Campath-1G. Pre-transplant immunosuppression was enhanced with 600 cGy total lymphoid irradiation and Campath-1G infusions in addition to 120 mg/kg cyclophosphamide and 1200 cGy fractionated total body irradiation. Cyclosporine alone was used as post-transplant immunosuppression. Neutrophils reached 0.5x10(9)/1 on day 14 and platelets 50 x 10(9)/1 on day 40. No acute graft-versus-host disease was seen. Bulk disease detected on CT scanning prior to BMT was found to have disappeared 10 weeks after BMT. The marrow showed residual disease (5% CD5+/CD19+ cells) 9 weeks after transplantation, which had decreased markedly at 13 (0.5%) and 26 (0.4%) weeks. The patient is currently alive and well 10 months after BMT with no clinically detectable disease. We conclude that BMT from an unrelated donor is a feasible treatment option in advanced CLL.

Antineoplastic Agents↗

Heterogeneity of breakpoints at the transcriptional co-activator gene, BOB-1, in lymphoproliferative disease.

Chromosome 11q23 is frequently a site of chromosomal translocation in both acute leukemias and chronic lymphoproliferative disorders. In the former, an 8 kb region within the MLL gene is consistently involved, whereas in the latter breakpoints appear to be heterogeneous. In a B cell acute leukemia cell line with t(14;18)(q32.3;q21.3) we have previously demonstrated a reciprocal translocation between the LAZ3/BCL6 gene at 3q27 and the B cell specific transcriptional coactivator gene BOB-1 at 11q23.1, implicating BOB-1 as a potential proto-oncogene. To confirm the chromosomal localization of BOB-1 we have mapped it by FISH to 11q23.1. It lay immediately telomeric of the ATM gene. We have also investigated the frequency of BOB-1 rearrangements in a panel of 32 cell lines and 71 patient samples. In one case of T cell prolymphocytic leukemia-a disease where 11q23 abnormalities are observed-a chromosomal rearrangement was identified 3.3-0.9 kb centromeric of the 3' end of the gene. Thus, there is a heterogeneity of breakpoints associated with BOB-1 while the frequency of the gene's involvement in lymphoproliferative diseases is low.

Base Sequence↗

Correlation of trisomy 12 with proliferating cells by combined immunocytochemistry and fluorescence in situ hybridization in chronic lymphocytic leukemia.

Conventional G-banding and fluorescence in situ hybridization (FISH) were performed on peripheral blood samples of 340 consecutive untreated cases of chronic lymphocytic leukemia (CLL) for the detection of trisomy 12 and other chromosome abnormalities. These findings were correlated with the proliferative activity of CLL lymphocytes assessed by the monoclonal antibody Ki-67. Cytogenetic analysis displayed a normal karyotype in 131 (38.5%) cases, trisomy 12 in 68 (20%), 31 by G-banding and an additional 37 cases by FISH, other clonal abnormalities in 47 (14%), and no metaphases in 94 (27.5%). The percentage of Ki-67-positive cells was significantly higher in cases with trisomy 12 (4.1 +/- 4.48) than in cases with a normal karyotype (1.5 +/- 2.0), those with other clonal abnormalities (1.35 +/- 1.37) and cases with no metaphases (1.14 +/- 1.6) (P< 0.0001). Cases with trisomy 12 were associated with more advanced clinical stage, atypical morphology and a higher percentage of Ki-67+ve cells than cases lacking trisomy 12 (P< 0.0001). Although there was no direct correlation between the percentage of trisomic and proliferating cells, the combination of immunocytochemistry and FISH showed that most Ki-67-positive cells were trisomic for chromosome 12. Our results suggest that the association of trisomy 12 with a higher proliferative activity supports the view that this abnormality is a secondary event associated with disease progression in CLL.

Adult↗

Role of CD34+ cells in engraftment after high-dose melphalan in multiple myeloma patients given peripheral blood stem cell rescue.

During the period December 1992 to June 1995, 95 patients were treated with high-dose melphalan (HDM) with peripheral blood stem cell rescue (PBSCR). Sixty-five had received previous treatment and 28 had relapsed. Among patients who had relapsed 21/28 had received HDM previously including one who received HDM twice during the course of the study. Seventy-five patients were given HDM/PBSCR for the first time. Comparisons have been made between engraftment times for platelets and neutrophils among patients who received less than or greater than 2 x 10(6) CD34+ cells at rescue. Analyses have also been done to evaluate the effect of previous HDM on recovery. Mobilization of progenitor cells was done with granulocyte colony-stimulating factor (G-CSF). Patients received only PBSCR. No growth factors were given to the PBSCR recipients during the recovery period. The percentage of patients from whom the number of CD34+ cells mobilized was > 2 x 10(6)/kg was similar in patients who received HDM for the first time (23%) compared with those who had had it previously (19%). The yield of CD34+ cells correlated with the number of granulocyte-macrophage colony forming units (CFU-GM). Although the number of CD34+ cells infused was < 2 x 10(6)/kg in 77% of patients, all engrafted for neutrophils to > 0.5 x 10(9)/l. This was delayed in patients who had had previous HDM (P < 0.02). Platelet recovery to > 25, 50 and 100 x 10(9)/l was delayed in all patients who received < 2 x 10(6) CD34+ cells/kg infused (P < 0.02). In patients who had had previous HDM both neutrophil (P < 0.05) and platelet recovery (P < 0.007) were delayed compared with recovery in patients who had not had HDM. In patients who had had previous HDM and received < 2 x 10(6) CD34+ cells/kg infused only 3/17 regained platelets to > 100 x 10(9)/l compared with 3/4 who had > 2 x 10(6) CD34+ cells/kg infused (P < 0.05 Fisher's exact test). There was no evidence that low numbers of CD34+ cells in the PBSCR were associated with early death. The data show that previous treatment with HDM had adverse effects on the subsequent engraftment of platelets among patients given HDM/PBSCR. The data suggest that additional measures are needed to achieve platelet reconstitution in these heavily pre-treated patients.

Antigens, CD34↗

Expression of the immunoglobulin-associated protein B29 in B cell disorders with the monoclonal antibody SN8 (CD79b).

We studied the expression of the immunoglobulin-associated membrane protein B29 in 499 cases of chronic B cell diseases using the monoclonal antibody SN8 (CD79b). SN8 was positive in 5% (17/330) of chronic lymphocytic leukemia (CLL) and 100% (15/15) of B prolymphocytic leukemia. The expression of B29 in other B cell disorders was, as a rule, significantly higher than in CLL. Two thirds of non-Hodgkin's lymphomas in leukemic phase were SN8 positive, including lymphoplasmacytic (45%), follicular (83%), mantle cell (92%) and splenic lymphoma with villous lymphocytes (74%) while only 25% of hairy cell leukemias were SN8 positive. Within CLL, 2.3% of typical cases were SN8+ while 16% of cases with atypical morphology and an increased number of prolymphocytes were SN8+. Our results suggest a useful role for SN8 in the immunophenotypic differentiation of B cell disorders as a marker for non-CLL diseases. The analysis of B29 expression may throw light into the structure of the B cell antigen receptor in B cell malignancies while the distinctive reactivity profile of SN8 has direct applications to diagnosis.

Antibodies, Monoclonal↗

Current approach to the biology and treatment of chronic lymphoid malignancies other than CLL.

A number of discrete disease entities are now well recognised within the lymphoproliferative disorders of B and T lymphocytes. By means of detailed morphologic and immunophenotypic analysis it is possible to distinguish these disorders from chronic lymphocytic leukemia (CLL) and thereby learn about their biology, natural history and response to treatment. We review here the main diagnostic and therapeutic issues of two B-cell disorders: B-prolymphocytic leukemia (B-PLL) and splenic lymphoma with circulating villous lymphocytes (SLVL) and discuss aspects of management and the role of splenectomy and of the nucleoside analog fludarabine in the treatment of B-PLL and SLVL.

Chronic Disease↗

Clinical experience with 2'-deoxycoformycin.

2'-deoxycoformycin (DCF) is the oldest of the nucleoside analogs in clinical practice. The main use has been in the B and T lymphoproliferative disorders. The early significant activity with a high remission rate reported in hairy cell leukemia (HCL) has been confirmed within our group. Data from a large phase II study, which comprised 165 evaluable patients with HCL treated with DCF 4mg/m2 every 2 weeks until maximal response collected over a ten-year period, shows a very long disease-free interval with 76% of the complete responders still in remission at 6 years. Some activity has been reported in chronic lymphocytic leukemia and an outline of a phase II study with low dose DCF given over five days every month is summarised. DCF has been shown to be active in mature T-cell malignancies, chiefly T-prolymphocytic leukemia (T-PLL) and the cutaneous T-cell lymphoma, Sezary syndrome. Its efficacy in other forms of T-cell lymphoma has been less consistent but, bearing in mind the poor outlook of these disorders, the data suggest that DCF should be considered as part of the treatment strategy. In T-PLL, for example, partial remitters (and non-responders) to DCF have received the monoclonal antibody CAMPATH-1H with excellent results.

Antibiotics, Antineoplastic↗

T-cell malignancies in Brazil. Clinico-pathological and molecular studies of HTLV-I-positive and -negative cases.

T-cell malignancies in Brazil have a high seroprevalence rate of HTLV-I antibodies. We have analyzed the disease features in 188 Brazilian patients with a T-cell disorder. These included 40 with T-lymphoblastic leukaemia or lymphoma (T-ALL/T-LbLy) and 148 with mature T-cell diseases: 5 T-prolymphocytic leukaemia, 53 adult T-cell leukaemia/lymphoma (ATLL), 54 cutaneous T-cell lymphomas, 29 pleomorphic T-cell lymphomas and 7 large granular lymphocyte leukaemia. The diagnosis was based on clinical, morphological and immunological features and HTLV-I serology. ATLL in Brazil has the same diseases features as in other endemic regions, the only apparent differences being: age, Brazilian patients being younger than Japanese, and ethnic grouping, one third of Brazilians being white Caucasians of European descent. We applied a scoring system based on the presence or absence of typical features associated with ATLL; hypercalcaemia, cell morphology, immunophenotype, histopathology and HTLV-I status, to see whether it may help in diagnosing cases of ATLL. All had high scores, whereas all other T-cell diseases scored low. Only 5 ATLL cases were HTLV-I-negative by serology, but they had otherwise typical features of ATLL, and their cells did not have HTLV-I proviral sequences by DNA analysis. Such cases suggest that ATLL may develop in a minority of individuals living in regions where it is endemic, without evidence of HTLV-I infection, and that other factors may contribute to the pathogenesis of the disease.

Adolescent↗

Characterization of a t(10;11)(p13-14;q14-21) in the monoblastic cell line U937.

Previous analysis of the monoblastic cell line U937 has shown that several sublines contain a rearranged chromosome arm 11q. In order to determine the true nature of the rearrangement, fluorescence in situ hybridization (FISH) was carried out with various combinations of single copy anonymous markers, clones containing genes, a chromosome 10 paint, and an 11 centromere specific sequence. The rearrangement was deduced to be a reciprocal translocation between chromosomes 10 and 11 described as t(10;11)(p13-14;q14-21). The breakpoint on chromosome 11 is telomeric to the INT2 gene and the pHS11 probe at 11q13, and centromeric to the marker D11S36 localized to 11q14.3-q22.1 and the MLL gene at 11q23. Similar translocations have been reported in various acute leukemias, principally of the monocytic lineage, and also in T-cell precursor acute lymphocytic leukemias. Further characterization of the genetic rearrangements in U937 may lead to the isolation of genes important in leukemogenesis and provide an in vitro system for their study.

Chromosome Mapping↗

An eight-way variant t(15;17) in acute promyelocytic leukemia elucidated using fluorescence in situ hybridization.

A complex eight-way translocation was identified, with the aid of fluorescence in situ hybridization (FISH), in a patient diagnosed as having acute promyelocytic leukemia (APL). The balanced translocation was defined as 46,XY,t(1;6;7;6;17;15;12;3) (p22;q27;p15;q13;q21;q22;q13;p13), which includes a der(15) chromosome consistent with the der(15) chromosome of the t(15;17)(q22;q21) typically found in APL. The patient was treated with all-trans retinoic acid (ATRA) and had a clinical course typical of the disease, which is currently in remission after an autologous bone marrow transplant. The other structural rearrangements appeared to have little effect on the biology of the neoplasia.

Chromosome Mapping↗

Key issues in the treatment of chronic lymphocytic leukaemia (CLL)

The outcome of the treatment of chronic lymphocytic leukaemia (CLL) has improved little over the past 30 years. The recent introduction of purine analogues, particularly fludarabine, may change this situation. These agents are highly effective and generally well tolerated. They raise the possibility of improved disease-free survival and allow appropriate patients to be considered for bone marrow transplantation (BMT). Randomised clinical trials are needed to establish the roles of purine analogues and other novel agents in improving the survival of CLL patients. These trials should use consistent diagnostic and assessment criteria to allow for the clinical heterogeneity of CLL.

Antibodies, Monoclonal↗

Cytogenetic abnormalities in the leukemic phase of non-Hodgkin lymphoma.

We have carried out chromosome analysis in a series of 16 non-Hodgkin Lymphoma (NHL) cases in leukemic phase. The diagnoses in these patients based on histology and immunologic markers were as follows: follicular lymphoma (FL), 3 cases; mantle cell lymphoma (Mc), 4 cases; lymphoplasmacytic lymphoma (LPL), 8 cases, and large cell lymphoma, 1 case. We have shown that the t(14;18), t(11;14), and trisomy 12 retained their subtype association with FL, Mc, and LPL, respectively, as in their nonleukemic counterparts with one case of FL showing t(1;19)(q23;p13). Among the four LPL cases without trisomy 12, one case each showed t(12;14)(q13;q32), trisomy 14, t(1;3)(p34;q21), and del(3)(q21). The t(1;19) and t(12;14) may represent rare events in FL and LPL, respectively, and may be uniquely associated with the leukemic phase. The breakpoint 14q32 was the most common single breakpoint involved, sometimes involving both chromosome 14 homologues depicting its association with primary and secondary genetic events in the disease progression. In addition to the main abnormalities, we have shown additional complex abnormalities in 14 of 16 cases. Among these, chromosome 3 was the most commonly involved, affecting the short or long arm or the whole chromosome; 5 of the 16 cases involved breakpoint 3q21. The high incidence of additional abnormalities in these NHL in leukemic phase suggest an association with the development of leukemia and progression of the disease.

Adult↗